1988
DOI: 10.13182/nse88-a22328
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Radiation Shielding Calculations for a 70- to 250-MeV Proton Therapy Facility

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Cited by 12 publications
(4 citation statements)
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“…Currently these simulations have not been benchmarked against experimental measurements, but the neutron production observed agrees with what others reported previously. [31][32][33] …”
Section: Iib Monte Carlo Neutron Production Simulationsmentioning
confidence: 99%
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“…Currently these simulations have not been benchmarked against experimental measurements, but the neutron production observed agrees with what others reported previously. [31][32][33] …”
Section: Iib Monte Carlo Neutron Production Simulationsmentioning
confidence: 99%
“…34,35 The neutron energy spectra results presented here are similar to what others have reported for a proton beam stopping in a thick water and tissuelike target. [31][32][33] In the present work, the proposed DWA treatment system does not require any passive beam modification devices such as scattering foils, range modulators, or other devices used to deliver the proton beam to the patient. Hence, neutron production occurs principally in the stopping media.…”
Section: Iiib Neutron Productionmentioning
confidence: 99%
“…The protons beam used in radiation therapy is provided by two particle accelerators, cyclotrons, and synchrotrons, which produce proton beams at typical energies between 70 and 250 MeV [12]. The cyclotron, mainly used for proton therapy, is a machine which delivers protons with fixed energy.…”
Section: Accelerators Used In the Proton Therapymentioning
confidence: 99%
“…Errors in these coefficients are not computed since the values listed by Hagen[54] und the parameters computed by Freeman[49] are stated without error. ........ = .............. i;/:1-ii .................. -6.0_o2;_1-20.0239-"i.i85 "................................................... 0;'................... 22°E nergy -Slope-............ tiiteic-ei, t............ Si0pe ............. h t, r pt....…”
mentioning
confidence: 99%